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The galaxy power spectrum and bispectrum in redshift space

机译:闪光灯空间中的银河系功率谱和BISPectrum

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We present the complete expression for the next-to-leading (1-loop) order galaxy power spectrum and the leading-order galaxy bispectrum in redshift space in the general bias expansion, or equivalently the effective field theory of biased tracers. We consistently include all line-of-sight dependent selection effects. These are degenerate with many, but not all, of the redshift-space distortion contributions, and have not been consistently derived before. Moreover, we show that, in the framework of effective field theory, a consistent bias expansion in redshift space must include these selection contributions. Physical arguments about the tracer sample considered and its observational selection have to be used to justify neglecting the selection contributions. In summary, the next-to-leading order galaxy power spectrum and leading-order galaxy bispectrum in the general bias expansion are described by 22 parameters, which reduces to 11 parameters if selection effects can be neglected. All contributions to the power spectrum can be written in terms of 28 independent loop integrals.
机译:我们在一般偏差扩展中展示了下一端(1环)阶层的Galaxy Power频谱和红移空间中的领先阶Galaxy BISPectrum的完整表达,或者等效偏置示踪剂的有效场理论。我们一直包括所有视线依赖性选择效果。这些与许多但不是全部,冗余空间失真贡献堕落,并且尚未以前持续得出。此外,我们表明,在有效的场理论框架中,红移空间中的一致偏差膨胀必须包括这些选择贡献。考虑示踪剂样本的物理论点及其观察选择必须用于辩护忽视选择贡献。总之,通过22个参数描述了一般偏置展开中的下一端阶Galaxy Power谱和前导星系BISPectrum,如果可以忽略选择效果,则降低到11个参数。可以根据28个独立的循环积分来编写对功率谱的所有贡献。

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